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A Compact Structure of Cytochrome c Trapped in a Lysine-Ligated State: Loop Refolding and Functional Implications of a Conformational Switch

机译:细胞色素c的紧凑结构困在赖氨酸连接状态:循环折叠和构象开关的功能含义。

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摘要

It has been suggested that the alkaline form of cytochrome c (cyt c) regulates function of this protein as an electron carrier in oxidative phosphorylation and as a peroxidase that reacts with cardiolipin (CL) during apoptosis. In this form, Met80, the native ligand to the heme iron, is replaced by a Lys. While it has become clear that the structure of cyt c changes, the extent and sequence of conformational rearrangements associated with this ligand replacement remain a subject of debate. Herein we report a high-resolution crystal structure of a Lys73-ligated cyt c conformation that reveals intricate change in the heme environment upon this switch in the heme iron ligation. The structure is surprisingly compact, and the heme coordination loop refolds into a β-hairpin with a turn formed by the highly conserved residues Pro76 and Gly77. Repositioning of residue 78 modifies the intraprotein hydrogen-bonding network and, together with adjustments of residues 52 and 74, increases the volume of the heme pocket to allow for insertion of one of the CL acyl moieties next to Asn52. Derivatization of Cys78 with maleimide creates a solution mimic of the Lys-ligated cyt c that has enhanced peroxidase activity, adding support for a role of the Lys-ligated cyt c in the apoptotic mechanism. Experiments with the heme peptide microperoxidase-8 and engineered model proteins provide a thermodynamic rationale for the switch to Lys ligation upon perturbations in the protein scaffold.
机译:有人提出,细胞色素c(cyt c)的碱性形式可调节该蛋白质的功能,作为氧化磷酸化中的电子载体和在细胞凋亡期间与心磷脂(CL)反应的过氧化物酶。以这种形式,血红素铁的天然配体Met80被Lys取代。虽然已经清楚cyt c的结构发生了变化,但是与这种配体置换有关的构象重排的程度和顺序仍然是争论的话题。在本文中,我们报道了Lys73-连接的cyt c构象的高分辨率晶体结构,该结构揭示了血红素铁连接中这一切换时血红素环境的复杂变化。该结构出奇的紧凑,血红素配位环通过高度保守的Pro76和Gly77残基重新折叠成β-发夹。残基78的重新定位修饰了蛋白质内的氢键网络,并且与残基52和74的调节一起,增加了血红素口袋的体积,以允许CL酰基部分之一插入到Asn52旁边。 Cys78与马来酰亚胺的衍生作用产生了一个模拟Lys连接的Cyt c的溶液,该溶液具有增强的过氧化物酶活性,增加了Lys连接的Cyt c在凋亡机制中的作用的支持。用血红素肽微过氧化物酶-8和工程模型蛋白进行的实验提供了一种热力学原理,可以根据蛋白支架中的扰动切换到Lys连接。

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